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Assessment of the density functional tight binding method for protic ionic liquids

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posted on 2025-05-08, 16:50 authored by Matthew A. Addicoat, Ryan Stefanovic, Grant WebberGrant Webber, Rob Atkin, Alister PageAlister Page
Density functional tight binding (DFTB), which is ~100-1000 times faster than full density functional theory (DFT), has been used to simulate the structure and properties of protic ionic liquid (IL) ions, clusters of ions and the bulk liquid. Proton affinities for a wide range of IL cations and anions determined using DFTB generally reproduce G3B3 values to within 5-10 kcal/mol. The structures and thermodynamic stabilities of n-alkyl ammonium nitrate clusters (up to 450 quantum chemical atoms) predicted with DFTB are in excellent agreement with those determined using DFT. The IL bulk structure simulated using DFTB with periodic boundary conditions is in excellent agreement with published neutron diffraction data.

Funding

ARC

History

Journal title

Journal of Chemical Theory and Computation

Volume

10

Issue

10

Pagination

4633-4643

Publisher

American Chemical Society

Language

  • en, English

College/Research Centre

Faculty of Science and Information Technology

School

School of Environmental and Life Sciences

Rights statement

This document is the Accepted Manuscript version of a Published Work that appeared in final form in Journal of Chemical Theory and Computation, ©2014 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see http://dx.doi.org/10.1021/ct500394t

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